EP1487113A2 - Codage et décodage de coefficients de transformation dans des codeurs d'images ou de vidéo - Google Patents

Codage et décodage de coefficients de transformation dans des codeurs d'images ou de vidéo Download PDF

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Publication number
EP1487113A2
EP1487113A2 EP04020471A EP04020471A EP1487113A2 EP 1487113 A2 EP1487113 A2 EP 1487113A2 EP 04020471 A EP04020471 A EP 04020471A EP 04020471 A EP04020471 A EP 04020471A EP 1487113 A2 EP1487113 A2 EP 1487113A2
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European Patent Office
Prior art keywords
block
zero
coefficients
scan order
last
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EP04020471A
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German (de)
English (en)
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EP1487113B1 (fr
EP1487113A3 (fr
Inventor
Heiko Schwarz
Detlef Marpe
Thomas Wiegand
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Fraunhofer Gesellschaft zur Forderung der Angewandten Forschung eV
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Fraunhofer Gesellschaft zur Forderung der Angewandten Forschung eV
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Publication of EP1487113A3 publication Critical patent/EP1487113A3/fr
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    • HELECTRICITY
    • H03ELECTRONIC CIRCUITRY
    • H03MCODING; DECODING; CODE CONVERSION IN GENERAL
    • H03M7/00Conversion of a code where information is represented by a given sequence or number of digits to a code where the same, similar or subset of information is represented by a different sequence or number of digits
    • H03M7/30Compression; Expansion; Suppression of unnecessary data, e.g. redundancy reduction
    • H03M7/40Conversion to or from variable length codes, e.g. Shannon-Fano code, Huffman code, Morse code
    • H03M7/4006Conversion to or from arithmetic code
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N19/00Methods or arrangements for coding, decoding, compressing or decompressing digital video signals
    • H04N19/10Methods or arrangements for coding, decoding, compressing or decompressing digital video signals using adaptive coding
    • H04N19/102Methods or arrangements for coding, decoding, compressing or decompressing digital video signals using adaptive coding characterised by the element, parameter or selection affected or controlled by the adaptive coding
    • H04N19/129Scanning of coding units, e.g. zig-zag scan of transform coefficients or flexible macroblock ordering [FMO]
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N19/00Methods or arrangements for coding, decoding, compressing or decompressing digital video signals
    • H04N19/10Methods or arrangements for coding, decoding, compressing or decompressing digital video signals using adaptive coding
    • H04N19/102Methods or arrangements for coding, decoding, compressing or decompressing digital video signals using adaptive coding characterised by the element, parameter or selection affected or controlled by the adaptive coding
    • H04N19/13Adaptive entropy coding, e.g. adaptive variable length coding [AVLC] or context adaptive binary arithmetic coding [CABAC]
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N19/00Methods or arrangements for coding, decoding, compressing or decompressing digital video signals
    • H04N19/10Methods or arrangements for coding, decoding, compressing or decompressing digital video signals using adaptive coding
    • H04N19/134Methods or arrangements for coding, decoding, compressing or decompressing digital video signals using adaptive coding characterised by the element, parameter or criterion affecting or controlling the adaptive coding
    • H04N19/136Incoming video signal characteristics or properties
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N19/00Methods or arrangements for coding, decoding, compressing or decompressing digital video signals
    • H04N19/10Methods or arrangements for coding, decoding, compressing or decompressing digital video signals using adaptive coding
    • H04N19/169Methods or arrangements for coding, decoding, compressing or decompressing digital video signals using adaptive coding characterised by the coding unit, i.e. the structural portion or semantic portion of the video signal being the object or the subject of the adaptive coding
    • H04N19/17Methods or arrangements for coding, decoding, compressing or decompressing digital video signals using adaptive coding characterised by the coding unit, i.e. the structural portion or semantic portion of the video signal being the object or the subject of the adaptive coding the unit being an image region, e.g. an object
    • H04N19/176Methods or arrangements for coding, decoding, compressing or decompressing digital video signals using adaptive coding characterised by the coding unit, i.e. the structural portion or semantic portion of the video signal being the object or the subject of the adaptive coding the unit being an image region, e.g. an object the region being a block, e.g. a macroblock
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N19/00Methods or arrangements for coding, decoding, compressing or decompressing digital video signals
    • H04N19/10Methods or arrangements for coding, decoding, compressing or decompressing digital video signals using adaptive coding
    • H04N19/169Methods or arrangements for coding, decoding, compressing or decompressing digital video signals using adaptive coding characterised by the coding unit, i.e. the structural portion or semantic portion of the video signal being the object or the subject of the adaptive coding
    • H04N19/18Methods or arrangements for coding, decoding, compressing or decompressing digital video signals using adaptive coding characterised by the coding unit, i.e. the structural portion or semantic portion of the video signal being the object or the subject of the adaptive coding the unit being a set of transform coefficients
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N19/00Methods or arrangements for coding, decoding, compressing or decompressing digital video signals
    • H04N19/60Methods or arrangements for coding, decoding, compressing or decompressing digital video signals using transform coding
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N19/00Methods or arrangements for coding, decoding, compressing or decompressing digital video signals
    • H04N19/90Methods or arrangements for coding, decoding, compressing or decompressing digital video signals using coding techniques not provided for in groups H04N19/10-H04N19/85, e.g. fractals
    • H04N19/91Entropy coding, e.g. variable length coding [VLC] or arithmetic coding
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N19/00Methods or arrangements for coding, decoding, compressing or decompressing digital video signals
    • H04N19/90Methods or arrangements for coding, decoding, compressing or decompressing digital video signals using coding techniques not provided for in groups H04N19/10-H04N19/85, e.g. fractals
    • H04N19/93Run-length coding

Definitions

  • the present invention describes a method and a Arrangement for coding transformation coefficients in image and / or video encoders and decoders and a corresponding computer program and a corresponding computer-readable storage medium, which in particular as a new efficient method for binary arithmetic Coding of transformation coefficients in the field of Video encoding (CABAC in H.264 / AVC, see [1]) used can be.
  • CABAC binary arithmetic Coding of transformation coefficients in the field of Video encoding
  • variable-length codewords become 2-dimensional Assigned events (RUN, LEVEL), where LEVEL the quantized value of a not to zero quantized (significant) transformation coefficients represents; the run length RUN gives the number of consecutive, quantized to zero (non-significant) Transformation coefficients, which in the vector of transformation coefficients directly before the current significant transform coefficient lie.
  • code words become more variable Length for the two special events EOB and ESCAPE Are defined. While, the EOB event indicates that no another significant transformation coefficient in the Block present, signals the ESCAPE event, that the existing event (RUN, LEVEL) is not affected by the defined alphabet of codewords of variable length can be represented. In this case, the Symbols RUN and LEVEL encoded by codewords of fixed length.
  • the object of the invention is therefore a Method and an arrangement for coding of Transformation coefficients in image and / or Video encoders and decoders and a corresponding Computer program and a corresponding computer-readable Storage medium to provide the above Remedy deficiencies and especially the coding keep required computational effort low.
  • a preferred embodiment of the invention Procedure is distinguished in that each of the last Transformation coefficients of the block different significant transformation coefficient of the block through a one-bit symbol is identified.
  • Procedure is provided that significant Through blocks containing transform coefficients One-bit symbol CBP4 in connection with other syntax elements such as CBP or macroblock mode be marked.
  • a particular advantage of the method is that by transmitting a one-bit symbol SIG for each Coefficients of a block and a one-bit symbol LAST for each significant coefficient of a block one Significance mapping is encoded, with the transmission in scan order, SIG is marked by serves significant coefficients and LAST indicates whether in the block further significant transformation coefficients available.
  • Modeling for the one-bit symbol CBP4, for coding the significance mapping and / or coding of the Coefficient amounts are context dependent. It is provided that block types of transform coefficients with comparable statistics to block categories be summarized.
  • Procedure is provided that the amount (ABS) by a Symbol in unary binarization or by a prefix part and a symbol having a suffix part is, where the prefix part consists of ones and the Suffix part coded in a 0th-order Exp Golomb code becomes.
  • Such computer programs (against Fee or free, freely accessible or password protected) downloadable in a data or Communication network are provided.
  • the way provided computer programs can then by a Method be utilized, in which a Computer program according to claim 11 from a network for Data transfer such as from the Internet on a data processing device connected to the network is downloaded.
  • Figure 1 illustrates the new coding method. For every block of transform coefficients gets first transmit a one-bit symbol CBP4 unless higher-level syntax elements (CBP or macroblock mode) already indicate that the considered block no contains significant transformation coefficients.
  • CBP4 symbol is zero if no significant Coefficients are present in the block. Is it one, is coded a significance map, which the Position (in scan order) of the significant Transformation coefficients specified. Subsequently the amounts as well as the sign of the significant Transfer coefficients in reverse scan order.
  • a detailed description of the encoding process will be provided given in point 1 below. Then in point 2 the Context modeling for binary arithmetic coding described.
  • the transformation coefficients of each block be scanned (eg Zig-Zag-Scan) Shown on a vector.
  • CBP4 is a one-bit symbol indicating whether significant Transformation coefficients (transformation coefficients not equal to zero) in one block. is the CBP4 symbol becomes zero, no further information for the corresponding block.
  • the CBP4 icon indicates that the corresponding block contains significant coefficients, becomes a significance mapping coded. This is done by transferring a One-bit symbol (SIG) for each coefficient in scan order. Is a corresponding significance symbol one (significant coefficient) becomes another one-bit symbol (LAST) sent. This symbol indicates whether the current significant coefficient of the last significant coefficient within the block is or ob further significant coefficients follow.
  • SIG One-bit symbol
  • LAST one-bit symbol
  • the figure 2 shows two examples of the method described for Coding of significance mapping. For the last scan position of a block never becomes significance information (SIG, LAST) transmitted. Was the transfer Significance mapping not already represented by a LAST symbol finished by one, it is obvious that the Coefficient at the last scan position is significant (see yellow marked position in Figure 2).
  • the significance mapping clearly specifies the positions of the significant transform coefficients within a block.
  • the coding of the exact values of the coefficients (levels) is done by two coding symbols: ABS (amount of the coefficients) and SIGN (sign of the coefficients). While SIGN represents a one-bit symbol, a binarization according to FIG. 3 is used to encode the amounts of the coefficients (ABS). For coefficient amounts in the interval [1; 14] this binarization corresponds to a unary binarization.
  • the binarization for coefficient amounts greater than 14 is composed of a prefix part consisting of 14 ones and a suffix part representing an 0th-order Exp Golomb code for the symbol (ABS-15) ,
  • the binarization does not include a representation for coefficient amounts (ABS) equal to 0, since significant coefficients (nonzero coefficients) always have an absolute value (ABS) greater than or equal to one.
  • the binarization for coefficients amounts greater than 14, composed of a prefix part and a suffix part consisting of an 0-0-order Exp Golomb code has the advantage that it has no loss of coding efficiency for all the binary decisions of the suffix part a special non-adaptive context with the symbol probabilities 0.5 can be used, which reduces the computational effort for encoding and decoding.
  • the levels are encoded in reverse scan order starting with the last significant coefficient within a block; this allows the formation of appropriate contexts for binary arithmetic coding.
  • the following 6 block types are differentiated for this conditioning: Luma-DC, Luma-AC, Chroma-U-DC, Chroma-U-AC, Chroma-V-DC, and Chroma- V AC.
  • CBP4 (X) is set to zero for the adjacent block X. If an adjacent block X (A or B) is outside the image area or if it belongs to another slice, the corresponding value CBP4 (X) is replaced by a default value. For INTRA coded blocks, a default value of one is used, for INTER coded blocks a default value of zero.
  • Max_koeff denotes the number of transformation coefficients for the corresponding block category (for H.264 / AVC, see FIG. 4).
  • the context number is always given by the corresponding scan position of the considered coefficient.
  • 2xmax_koeff-2 contexts are used to encode the significance map.
  • the amounts of the transformation coefficients are in the transferred in reverse scan order.
  • the context number is determined by the number of already encoded coefficients (in reverse scan order) with an amount ABS> 1, with a limitation to the maximum context number of 4.
  • FIG. 6 shows two examples of the context selection in encoding the amounts ABS of the significant transform coefficients.
  • the invention is limited in its embodiment not to the preferred embodiments given above. Rather, it is a number of variants conceivable that of the inventive arrangement and the inventive method even with fundamentally different make use of the appropriate versions.

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  • Engineering & Computer Science (AREA)
  • Multimedia (AREA)
  • Signal Processing (AREA)
  • Theoretical Computer Science (AREA)
  • Compression Or Coding Systems Of Tv Signals (AREA)
  • Compression, Expansion, Code Conversion, And Decoders (AREA)
  • Compression Of Band Width Or Redundancy In Fax (AREA)
  • Image Processing (AREA)
EP04020471A 2002-05-02 2003-05-02 Codage et décodage de coefficients de transformation dans des codeurs d'images ou de vidéo Expired - Lifetime EP1487113B1 (fr)

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
DE10220961 2002-05-02
DE10220961 2002-05-02
EP03725142A EP1500281A2 (fr) 2002-05-02 2003-05-02 Procede et ensemble pour coder des coefficients de transformation dans des codeurs d'image et/ou video et des decodeurs d'image et/ou video, programme informatique correspondant et support de memorisation correspondant lisible sur ordinateur

Related Parent Applications (1)

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EP03725142A Division EP1500281A2 (fr) 2002-05-02 2003-05-02 Procede et ensemble pour coder des coefficients de transformation dans des codeurs d'image et/ou video et des decodeurs d'image et/ou video, programme informatique correspondant et support de memorisation correspondant lisible sur ordinateur

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EP1487113A2 true EP1487113A2 (fr) 2004-12-15
EP1487113A3 EP1487113A3 (fr) 2005-03-16
EP1487113B1 EP1487113B1 (fr) 2006-10-18

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EP04020471A Expired - Lifetime EP1487113B1 (fr) 2002-05-02 2003-05-02 Codage et décodage de coefficients de transformation dans des codeurs d'images ou de vidéo
EP03725142A Withdrawn EP1500281A2 (fr) 2002-05-02 2003-05-02 Procede et ensemble pour coder des coefficients de transformation dans des codeurs d'image et/ou video et des decodeurs d'image et/ou video, programme informatique correspondant et support de memorisation correspondant lisible sur ordinateur
EP04016773A Expired - Lifetime EP1467491B1 (fr) 2002-05-02 2003-05-02 Codage arithmétique des coefficients de transformée

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EP03725142A Withdrawn EP1500281A2 (fr) 2002-05-02 2003-05-02 Procede et ensemble pour coder des coefficients de transformation dans des codeurs d'image et/ou video et des decodeurs d'image et/ou video, programme informatique correspondant et support de memorisation correspondant lisible sur ordinateur
EP04016773A Expired - Lifetime EP1467491B1 (fr) 2002-05-02 2003-05-02 Codage arithmétique des coefficients de transformée

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US (10) US7702013B2 (fr)
EP (3) EP1487113B1 (fr)
JP (4) JP4313757B2 (fr)
KR (1) KR100729270B1 (fr)
AT (2) ATE352826T1 (fr)
DE (2) DE50306371D1 (fr)
DK (2) DK1487113T3 (fr)
ES (2) ES2270246T3 (fr)
HK (2) HK1070480A1 (fr)
PT (2) PT1487113E (fr)
WO (1) WO2003094529A2 (fr)

Cited By (2)

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